幼鱼对模拟冷水脉冲的敏感性因物种和年龄而异

IF 0.9 4区 环境科学与生态学 Q4 LIMNOLOGY Journal of Limnology Pub Date : 2022-07-22 DOI:10.4081/jlimnol.2022.2056
Scott Raymond, J. Ryall, J. Koehn, B. Fanson, S. Hill, D. Stoessel, Z. Tonkin, Joanne Sharley, C. Todd, Ashlen Campbell, J. Lyon, Mark W. Turner, B. Ingram
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引用次数: 0

摘要

从蓄水的低水位区释放的冷水会大幅降低下游河流的水温。这种冷水污染(CWP)可以延伸数百公里,严重挑战水生动物的生理能力,特别是鱼类等外胚层动物维持新陈代谢、发育、生长和生存等基本过程的能力。CWP对本地鱼类的影响,尤其是对早期生命阶段的影响,鲜为人知。我们研究了24小时暴露在一系列与环境相关的水温(8、10、12、14、16、18和20°C)下对两种澳大利亚本土鱼类的三个年龄级(<24小时大、7天大和14天大的幼虫)的影响:墨累鳕鱼(Maccullocella peelii)和麦夸里鲈鱼(Macquaria australasica)。总的来说,与澳大利亚M.australasica相比,果皮M.peelii的幼虫对较低的水温更敏感,因此对CWP更敏感,这表明平衡损失率更高。果皮M.peelii幼虫在7天大时对暴露最敏感,而澳大利亚M.australasica幼虫在<24h大时最敏感。利用我们的结果,我们对蓄水前和蓄水后的温度情景进行了建模,并估计了澳大利亚河段两种物种的下游CWP足迹。据预测,在蓄水后的前26公里河流中,皮氏分枝杆菌的幼虫不存在,而对澳大利亚分枝杆菌的分布没有影响。管理蓄水以下的河流水温对于促进地方和全球特有鱼类的积极成果至关重要。这项研究强调了CWP在关键的早期生命阶段和鱼类物种之间的不同影响,并强调迫切需要更好地管理低湖流水排放,以改善下游河流生态系统。
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Larval fish sensitivity to a simulated cold-water pulse varies between species and age
The release of cold-water from hypolimnetic zones of impoundments sharply reduces downstream riverine water temperature. This cold-water pollution (CWP) can extend for hundreds of kilometres, severely challenging the physiological ability of aquatic fauna, particularly ectotherms such as fish, to maintain essential processes such as metabolism, development and growth and survival. The impact of CWP on native fish, especially early life stages, is poorly known. We investigated the effect of a 24-hour exposure to a range of environmentally-related water temperatures (8, 10, 12, 14, 16, 18 and 20°C) on three age-classes (<24-hour-old, 7-day and 14-day-old larvae) of two Australian native fish species: Murray cod (Maccullochella peelii) and Macquarie perch (Macquaria australasica). Overall, larvae of M. peelii were more sensitive to lower water temperatures and hence CWP than M. australasica, indicated by higher rates of equilibrium loss. Larvae of M. peelii were most sensitive to exposure at seven days old whereas M. australasica larvae were most sensitive at <24-h-old. Using our results, we modelled pre- and post-impoundment temperature scenarios and estimated the downstream CWP footprint for both species in an Australian river reach. Larvae of M. peelii were predicted to be absent from the first 26 km of river downstream of the impoundment compared with no impact on the distribution of M. australasica. Managing riverine water temperature below impoundments is fundamental to promoting positive outcomes for endemic fish on not only a local, but global basis. This study emphasises the differential impact of CWP among the critical early life stages and fish species and highlights the urgent need to better manage hypolimnetic water releases to improve downstream river ecosystems.
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来源期刊
Journal of Limnology
Journal of Limnology 地学-湖沼学
CiteScore
2.70
自引率
6.20%
发文量
12
审稿时长
3 months
期刊介绍: The Journal of Limnology publishes peer-reviewed original papers, review papers and notes about all aspects of limnology. The scope of the Journal of Limnology comprises the ecology, biology, microbiology, physics, and chemistry of freshwaters, including the impact of human activities, management and conservation. Coverage includes molecular-, organism-, community-, and ecosystem-level studies on both applied and theoretical issues. Proceedings of workshops, specialized symposia, conferences, may also be accepted for publication.
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